Energy detection platform with LED indication

The energy detection platform with LED indicators uses shock wave sensors to convert electrical signals to control the flashing of LED lights, solving the problem that ordinary people have difficulty detecting the energy of shock wave therapy devices and enabling non-professionals to make simple and accurate judgments on energy status.

CN223586232UActive Publication Date: 2025-11-25SHANJIE MEDICAL TECH (ZHENGZHOU) CO LTD
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Patent Information

Application Number
CN202422498202.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-16
Publication Date
2025-11-25
Estimated Expiration
2034-10-16

AI Technical Summary

Technical Problem

The lack of simple and easy-to-operate equipment in current technology makes it difficult for ordinary people to test the energy of shockwave therapy devices on their own.

Method used

Design an energy detection platform with LED indicators. The shock wave sensor converts the shock wave into an electrical signal to control the flashing of the LED indicator. Non-professionals can understand the shock wave situation by observing the color and flashing of the light. A limiting sleeve ensures accurate docking between the treatment head and the sensor.

Benefits of technology

This allows non-professionals to easily and accurately determine the energy state of a shockwave therapy device, improving the operability and accuracy of the detection.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223586232U_ABST
Patent Text Reader

Abstract

The utility model relates to an energy detection platform with LED indication. The LED indicating energy detection platform comprises a shock wave sensor and a plurality of LED indicating lamps. The shock wave sensor is associated with the LED indicating lamp; the treatment head of the control handle abuts against the shock wave sensor. According to the utility model, the structure is simple, the shock wave transmitted by the treatment head is converted into an electric signal through the shock wave sensor, the flicker of the LED indicating lamp is controlled, and a non-professional person can know the condition of the shock wave transmitted by the treatment head through the flicker condition of the LED indicating lamp.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of shock wave therapeutic instrument detection, in particular to a LED indication energy detection platform. BACKGROUND

[0002] The shock wave therapeutic instrument is the use of billiard ball reciprocating impact treatment head, produces the shock wave. The shock wave is transmitted to the human body inside through the treatment head, and treatment is carried out. The energy detection of the shock wave therapeutic instrument includes energy stability detection and energy density detection, and usually needs to use special detection device, and is calculated by professional personnel. The energy detection of the shock wave therapeutic instrument can be used for evaluating the running state of the control handle, so as to ensure that the shock wave therapeutic instrument stably produces curative effect. The shock wave therapeutic instrument has been widely popularized and applied to various medical institutions, and even there is a simplified version suitable for family. These shock wave therapeutic instruments all need to be regularly subjected to energy detection, but the prior art does not have simple and easy-to-operate detection equipment, so that ordinary people can also perform energy detection of the shock wave therapeutic instrument. UTILITY MODEL CONTENT

[0003] The utility model aims at solving the above problems, and provides a LED indication energy detection platform.

[0004] The technical scheme of the utility model is: a LED indication energy detection platform, including shock wave sensor, a plurality of LED indicating lamp, shock wave sensor is associated with LED indicating lamp, the treatment head of control handle is opposite with shock wave sensor, the shock wave that treatment head conveys is accepted by shock wave sensor, and is converted into electric signal, the flicker of LED indicating lamp is controlled by the electric signal, even if non-professional personnel can also understand the shock wave condition that treatment head conveys through the flicker condition of LED indicating lamp.

[0005] Preferably, the LED indication energy detection platform further comprises a limiting sleeve corresponding to the head end of the control handle; the shock wave sensor is arranged in the limiting sleeve; the head end of the control handle is inserted into the limiting sleeve; the limiting sleeve horizontally limits the head end of the control handle, ensuring that the treatment head is in contact with the shock wave sensor, which is conducive to improving the indication accuracy of the LED indicating lamp.

[0006] Further, a chamfer is arranged on the inner edge of the outer end of the limiting sleeve, so as to facilitate the insertion of the head end of the control handle.

[0007] Preferably, the LED indication energy detection platform further comprises a PCB; the LED indicating lamp and the shock wave sensor are mounted on the PCB; the PCB facilitates the design of the related circuit of the LED indicating lamp and the shock wave sensor.

[0008] Preferably, several LED indicator lights are arranged in a line so that non-professionals can measure the shock wave energy output by the control handle according to the number of flashes of the LED indicator lights.

[0009] Further, the several LED indicator lights are respectively in multiple colors; the LED indicator lights of the same color are arranged together; and different colors correspond to different states of the control handle, which is more convenient for non-professionals to measure the shock wave energy output by the control handle.

[0010] Further, the colors of the LED indicator lights include red, yellow, and green, and are arranged in red, blue, and green; the red color represents a dangerous state, indicating that the control handle is seriously worn out and needs to be replaced immediately; the yellow color represents a worn-out state, indicating that the control handle has a certain wear and tear, although the shock wave energy of the control handle has a certain defect, but still has a certain treatment effect and can be used for a period of time; and the green color represents a healthy state, indicating that the shock wave energy of the control handle can be in the best state.

[0011] The LED indication energy detection platform has the following advantages.

[0012] (1) The utility model discloses a simple structure, and the shock wave sensor is converted into electric signal to the shock wave of the treatment head delivery, and the flashing of LED indicator light is controlled, so that non-professionals can also understand the shock wave condition of the treatment head delivery through the flashing of LED indicator light.

[0013] (2) The utility model discloses the horizontal position of the control handle head end is limited to the state of guaranteeing that the treatment head is pressed against the shock wave sensor, and it is favorable to improve the indication accuracy of LED indicator light. DRAWINGS

[0014] Figure 1 It is the perspective view of the LED indication energy detection platform of the utility model;

[0015] Figure 2 It is the vertical section view of Figure 1 .

[0016] Figure 3 It is the circuit diagram of the LED indication energy detection platform of the utility model;

[0017] In the drawing, 00. control handle, 01. treatment head,

[0018] 1. shock wave sensor, 2. LED indicator light, 3. limiting sleeve, 31. chamfer, 4. PCB board. DETAILED DESCRIPTION

[0019] Example one: refer to Figures 1-2The utility model provides an energy detection platform of LED indication, including shock wave sensor 1, a plurality of LED indication light 2, shock wave sensor 1 is associated with LED indication light 2, the treatment head 01 of control handle 00 is in abutment with shock wave sensor 1, and the shock wave that treatment head 01 transports is accepted by shock wave sensor 1, and the electric signal is converted, and this electric signal controls the flicker of LED indication light 2, and even non-professional personnel can understand the shock wave condition that treatment head 01 transports through the flicker condition of LED indication light 2.

[0020] Compared with the prior art, the utility model discloses simple structure, and the shock wave that treatment head 01 transports is converted into electric signal by shock wave sensor 1, controls the flicker of LED indication light 2, so that even non-professional personnel can understand the shock wave condition that treatment head 01 transports through the flicker condition of LED indication light 2.

[0021] The energy detection platform of LED indication also includes the limit sleeve 3 that corresponds with the head end of control handle 00 is matched, and shock wave sensor 1 is arranged in the limit sleeve 3 inside, and the head end of control handle 00 is inserted into limit sleeve 3, and limit sleeve 3 carries out horizontal location to the head end of control handle 00, guarantees the state of treatment head 01 abutting at shock wave sensor 1, and it is favorable to improve the indication accuracy of LED indication light 2.

[0022] The inner edge of the outer end of limit sleeve 3 is provided with chamfer 31, to facilitate the insertion of the head end of control handle 00.

[0023] The energy detection platform of LED indication also includes PCB board 4, and LED indication light 2, shock wave sensor 1 are all installed on PCB board 4, and PCB board 4 is convenient for the relevant circuit of LED indication light 2, shock wave sensor 1 to design.

[0024] A plurality of LED indication light 2 is arranged according to line, to facilitate non-professional personnel to measure the shock wave energy that control handle 00 outputs according to the flicker number of LED indication light 2.

[0025] The working principle of the embodiment is as follows: the shock wave that treatment head 01 transports is accepted by shock wave sensor 1, and the electric signal is converted, and the electric signal controls the flicker of LED indication light 2, so that even non-professional personnel can understand the shock wave condition that treatment head 01 transports through the flicker condition of LED indication light 2.

[0026] Referring to Figure 3The circuit used in the embodiment comprises an energy detection circuit, an active circuit, a pulse width detection circuit, a power supply circuit and an energy indication LED circuit; the power supply circuit provides power supply for other circuits; the pulse width detection circuit detects the pulse width generated by vibration and generates an intensity test current; the intensity test current is transmitted to the master control circuit through the energy detection circuit; the master control circuit controls the on-off of each LED lamp in the energy indication LED circuit.

[0027] Embodiment two: Embodiment two is basically the same as embodiment one, and the same parts will not be repeated. The difference is that: the several LED indicator lights 2 are of multiple colors respectively; the LED indicator lights 2 of the same color are arranged together; different colors correspond to different states of the control handle 00, which is more convenient for non-professionals to measure the shock wave energy output by the control handle 00.

[0028] The colors of the LED indicator lights 2 include red, yellow and green, and are arranged in red, blue and green; red represents a dangerous state, indicating that the control handle 00 is severely worn out and needs to be replaced immediately; yellow represents a state of strain, indicating that the control handle 00 has a certain degree of wear and tear, although the shock wave energy of the control handle 00 has a certain degree of damage, it still has a certain therapeutic effect and can be used for a period of time; green represents a healthy state, indicating that the shock wave energy of the control handle 00 can be in the best state.

Claims

1. An LED-indicated energy detection platform, comprising: The shock wave sensor is associated with the LED indicator light.

2. The LED-indicated energy detection platform of claim 1, wherein: The treatment head of the control handle is in abutment with the shock wave sensor.

3. The LED-indicated energy detection platform of claim 2, wherein: The control handle head end is inserted into the limiting sleeve.

4. The LED-indicated energy detection platform of claim 1, wherein: The outer end inner edge of the limiting sleeve is provided with a chamfer.

5. The LED-indicated energy detection platform of claim 1, wherein: The PCB board is further provided.

6. The LED-indicated energy detection platform of claim 5, wherein: The LED indicator light is arranged in a line column. The LED indicator light is of a plurality of colors. The LED indicator light of the same color is arranged together.